Department of Chemical and Process Engineering, University of Surrey, Guildford, Surrey GU2 7JP, UK.
Department of Chemical and Process Engineering, University of Surrey, Guildford, Surrey GU2 7JP, UK.
Int J Pharm. 2020 Oct 15;588:119770. doi: 10.1016/j.ijpharm.2020.119770. Epub 2020 Aug 14.
Dry granulation through roll compaction is a technology commonly used in the pharmaceutical industry for producing roll compacted ribbons. The significance of the feed screw speed and roll speed during ribbon production was highlighted in recent publications. However, previous studies focused primarily on the individual effects of either the feed screw speed or roll speed on ribbon porosity, and the synergetic effect of these parameters was rarely examined. The aim of this study therefore was to investigate the effects of the screw-to-roll speed ratio on the porosity of roll compacted ribbons, produced at different roll compaction conditions using the microcrystalline cellulose MCC, Avicel PH-102 feed material. It was observed that ribbon porosity decreased linearly with increasing screw-to-roll speed ratio. Furthermore, an increase in the speed ratio led to an increase in the roll gap and mass throughput while a decrease in the screw constant was observed. Thus, this study demonstrates that the screw-to-roll speed ratio can be treated as one of the critical process parameters for controlling ribbon porosity and can also be used to determine the optimum operating regimes during roll compaction.
干法制粒通过辊压是制药工业中常用的技术,用于生产辊压制带状物。在最近的出版物中强调了在带状物生产过程中进给螺杆速度和辊速度的重要性。然而,以前的研究主要集中在进给螺杆速度或辊速度对带状物孔隙率的单独影响上,很少研究这些参数的协同效应。因此,本研究旨在研究螺杆-辊速度比对使用微晶纤维素 MCC、Avicel PH-102 给料材料在不同辊压条件下生产的辊压制带状物孔隙率的影响。结果表明,带状物孔隙率随螺杆-辊速度比的增加而线性降低。此外,速度比的增加导致辊隙和质量通量增加,而观察到螺杆常数减小。因此,本研究表明,螺杆-辊速度比可以作为控制带状物孔隙率的关键工艺参数之一,也可用于确定辊压过程中的最佳操作范围。